CN218599218U - Anti-shake device for industrial three-dimensional imaging equipment - Google Patents
Anti-shake device for industrial three-dimensional imaging equipment Download PDFInfo
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- CN218599218U CN218599218U CN202222441246.5U CN202222441246U CN218599218U CN 218599218 U CN218599218 U CN 218599218U CN 202222441246 U CN202222441246 U CN 202222441246U CN 218599218 U CN218599218 U CN 218599218U
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Abstract
The utility model discloses an anti-shake device for industrial three-dimensional imaging equipment, which relates to the technical field of auxiliary devices for anti-shake of industrial three-dimensional imaging equipment, and comprises a limit square plate, a limit block and a limit block, wherein the limit square plate is arranged at one side inside a three-dimensional imaging anti-shake main body and is fixedly connected with the three-dimensional imaging anti-shake main body through an electric push rod; the distance measurement sensor is arranged at the middle position of the anti-collision cushion, the distance measurement sensor and the anti-collision cushion are fixedly connected through the clamping groove, the distance measurement sensor and the electric push rod are electrically connected, and the anti-shaking device for the industrial three-dimensional imaging equipment effectively reduces the probability of shaking of the equipment during processing through limiting and fixing the three-dimensional imaging equipment when in use.
Description
Technical Field
The utility model relates to an industry three-dimensional imaging equipment anti-shake uses auxiliary device technical field, specifically is an industry three-dimensional imaging equipment uses anti-shake device.
Background
The three-dimensional holographic imaging is a quadrangular pyramid made of transparent materials, the sight of audiences can penetrate through the rectangular pyramid from any side, the audiences can see freely floating images and figures from a conical space through surface mirror reflection and reflection, and an anti-shaking device for industrial three-dimensional imaging equipment can be used when the industrial three-dimensional imaging equipment is processed, so that the shaking probability of the industrial three-dimensional imaging equipment during molding is effectively reduced.
Chinese patent No. CN110410632A, 5 d 11/2019 granted bulletin day, a scanner with an anti-shake device for three-dimensional imaging, comprising a hollow bearing plate and a damping device, wherein the lower end of the hollow bearing plate is uniformly connected with a plurality of hinges, one end of the hinge far away from the hollow bearing plate is connected with a triangular bearing support, one end of the triangular bearing support far away from the hinge is connected with the damping device, the damping device is composed of a spring groove, a spring bottom plate, a linear sliding groove, a buffer spring, a linear sliding block and a universal wheel connecting block, one side of the damping device near the triangular bearing support is provided with a spring groove, the spring groove is fixedly connected with the triangular bearing support, and the bottom of the spring groove is provided with the spring bottom plate.
Although above-mentioned scheme is through fixed down tube and No. two piston rod looks fixed connection, so three-dimensional imaging scanner body can guarantee that a piston rod does not take place to rock at the in-process that rises, has reached the effect of anti-shake, but anti-shake device for imaging apparatus is when using because it is higher to contact distance control regulation degree of difficulty, and the elapsed time is longer, to this we propose an industry anti-shake device for three-dimensional imaging apparatus.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an industry is anti-shake device for three-dimensional imaging equipment to it often is using owing to carry out the problem that anti-shake protection is not good enough and lead to equipment practicality to reduce to provide current industry is anti-shake device for three-dimensional imaging equipment in solving above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: an anti-shake device for an industrial three-dimensional imaging device comprises a three-dimensional imaging anti-shake main body,
the limiting square plate is arranged on one side inside the three-dimensional imaging anti-shake main body, the limiting square plate is fixedly connected with the three-dimensional imaging anti-shake main body through an electric push rod, an anti-collision cushion is arranged on one side of the limiting square plate, and the anti-collision cushion is connected with the limiting square plate in a sticking mode;
the distance measuring sensor is arranged at the middle position of the anti-collision cushion, the distance measuring sensor and the anti-collision cushion are fixedly connected through a clamping groove, and the distance measuring sensor and the electric push rod are electrically connected.
Preferably, electric putter's outside is provided with the push rod fixed block, the inside both ends of three-dimensional formation of image anti-shake main part all are provided with outer spacing square, one side of three-dimensional formation of image anti-shake main part is provided with overhauls the apron, and overhauls the apron and pass through draw-in groove fixed connection with three-dimensional formation of image anti-shake main part.
Preferably, the upper portion of one side of the three-dimensional imaging anti-shake main body is provided with an external fixing square block, the external fixing square block is connected with the three-dimensional imaging anti-shake main body in a sticking mode, one end of the external fixing square block is provided with a round soft convex block, and the number of the round soft convex blocks is more than two.
Preferably, the two sides of the lower part of the outer fixing block are provided with L-shaped limiting lower blocks, the L-shaped limiting lower blocks are connected with the three-dimensional imaging anti-shaking main body in a welding mode, and the two ends of the lower part of the L-shaped limiting lower blocks are provided with bolt fixing holes.
Preferably, the inner wall of three-dimensional formation of image anti-shake main part is provided with the interior piece that shocks resistance, and shocks resistance the interior piece and pass through draw-in groove fixed connection with three-dimensional formation of image anti-shake main part, the both ends of spacing square slab all are provided with the spin fixed block, one side of spin fixed block is provided with the slip spin, and the slip spin passes through draw-in groove fixed connection with the spin fixed block.
Preferably, one side of the outer limiting block is provided with a buffering block, the buffering block is fixedly connected with the outer limiting block through a buffering spring, and the other end of the buffering block is provided with a fixed cushion.
Compared with the prior art, the beneficial effects of the utility model are that:
1. this kind of industry is anti-shake device for three-dimensional imaging device compares with current industry three-dimensional imaging device anti-shake and uses auxiliary device, distance measuring sensor and electric putter have been equipped with, distance measuring sensor's design can let electric putter's action more sensitive, distance measuring sensor can effectively control the position of spacing square slab, thereby greatly increased carries out spacing probability to the shaping material, the design through electric putter can let three-dimensional formation of image when fixing the probability of anti-shake, the problem that current industry is anti-shake device for three-dimensional imaging device often uses because it is not good enough to carry out the anti-shake protection to equipment and lead to equipment practicality to reduce has been solved.
2. This kind of industry is anti-shake device for three-dimensional imaging device compares with current industry three-dimensional imaging device anti-shake with auxiliary device, buffer spring has been equipped with, buffering square and fixed cushion, buffer spring's design can let the fixed of buffering square and fixed cushion more convenient, through buffer spring, the impact force that produces when the combined design of buffering square and fixed cushion can effectively reduce equipment and use, the problem of the impaired probability of equipment increase is often caused owing to the too big impact force of production when using equipment to current industry three-dimensional imaging device for equipment when using to the anti-shake device for equipment has been solved.
Drawings
FIG. 1 is a perspective view of the overall structure of the present invention;
FIG. 2 is a cross-sectional view of the overall structure of the present invention;
fig. 3 is a partially enlarged view of the area a of fig. 2 according to the present invention.
In the figure: 1. a three-dimensional imaging anti-shake body; 2. overhauling the cover plate; 3. an external fixed block; 4. a round soft bump; 5. an L-shaped limiting lower block; 6. a bolt fixing hole; 7. a limiting square plate; 8. an anti-collision cushion; 9. a distance measuring sensor; 10. an electric push rod; 11. an outer limiting block; 12. a buffer spring; 13. a buffer block; 14. impact resistant inner blocks; 15. a push rod fixing block; 16. sliding the ball; 17. fixing the soft cushion; 18. and the rolling ball fixing block.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Referring to fig. 1-3, the present invention provides an embodiment: an anti-shake device for an industrial three-dimensional imaging device comprises a three-dimensional imaging anti-shake main body 1,
the limiting square plate 7 is arranged on one side inside the three-dimensional imaging anti-shake main body 1, the limiting square plate 7 is fixedly connected with the three-dimensional imaging anti-shake main body 1 through an electric push rod 10, an anti-collision cushion 8 is arranged on one side of the limiting square plate 7, and the anti-collision cushion 8 is connected with the limiting square plate 7 in a sticking mode;
the distance measuring sensor 9 is arranged at the middle position of the anti-collision cushion 8, the distance measuring sensor 9 is fixedly connected with the anti-collision cushion 8 through a clamping groove, and the distance measuring sensor 9 is electrically connected with the electric push rod 10.
Referring to fig. 1, an access cover plate 2 is arranged on one side of a three-dimensional imaging anti-shake body 1, the access cover plate 2 is fixedly connected with the three-dimensional imaging anti-shake body 1 through a clamping groove, the access cover plate 2 is more firmly connected with the three-dimensional imaging anti-shake body 1, an external fixing block 3 is arranged above one side of the three-dimensional imaging anti-shake body 1, the external fixing block 3 is connected with the three-dimensional imaging anti-shake body 1 in a sticking manner, the external fixing block 3 is more firmly connected with the three-dimensional imaging anti-shake body 1, the round soft bump 4 is more convenient to fix due to the design of the external fixing block 3, one end of the external fixing block 3 is provided with the round soft bump 4, the round soft bumps 4 are more than two, the difficulty of the equipment during installation can be effectively reduced due to the design of the plurality of round soft bumps 4, L-shaped limiting lower blocks 5 are arranged on two sides below the external fixing block 3, the L-shaped limiting lower blocks 5 are welded with the three-dimensional imaging anti-shake body 1, the L-shake block 5 is more firmly connected with the three-dimensional imaging anti-shake body 1 due to the L-shake body 5, and the L-limiting lower blocks 5 can be more convenient to be connected with the L-imaging anti-shake body 1 through limiting fixing holes 6;
please refer to fig. 2 and fig. 3, a push rod fixing block 15 is arranged outside an electric push rod 10, two ends inside a three-dimensional imaging anti-shake main body 1 are provided with outer limiting blocks 11, the design of the outer limiting blocks 11 can increase the stability when fixing a limiting square plate 7, the inner wall of the three-dimensional imaging anti-shake main body 1 is provided with an anti-impact inner block 14, the anti-impact inner block 14 is fixedly connected with the three-dimensional imaging anti-shake main body 1 through a clamping groove, the connection between the anti-impact inner block 14 and the three-dimensional imaging anti-shake main body 1 is firmer, the protection of the equipment against external impact force when in use can be effectively increased through the design of the anti-impact inner block 14, the service life of the equipment when in use can be greatly prolonged, two ends of the limiting square plate 7 are provided with fixing blocks 18, one side of the rolling ball fixing block 18 is provided with a sliding ball 16, the sliding ball 16 is fixedly connected with the fixing block 18 through the clamping groove, the rolling ball 16 can be more conveniently rotated through the rolling ball 18, one side of the outer limiting block 11 is provided with a buffering block 13, and the other end of the buffering block 13 is more firmly connected with a cushion.
The working principle is as follows: when the anti-shaking device for the industrial three-dimensional imaging equipment is used, the anti-shaking device for the industrial three-dimensional imaging equipment is moved to a position needing to be used, at the moment, a bolt can be fixed in the bolt fixing hole 6 at one end of the L-shaped limiting lower block 5, then, a switch for controlling the electric push rod 10 is turned on, so that the electric push rod 10 can enable the limiting square plate 7 to act, when the distance measuring sensor 9 senses that a three-dimensional imaging model approaches, then the distance measuring sensor 9 can transmit a signal to the electric push rod 10, at the moment, the electric push rod 10 can stop acting, then, the probability of shaking of the equipment can be reduced during three-dimensional imaging, when the equipment is used, when the equipment is moved through the limiting square plate 7, at the moment, the impact force generated during the action can enable the buffer spring 12 and the fixed cushion 17 to deform, the impact force received by the equipment when the equipment is used can be effectively reduced through self deformation, so that the impact force is protected when the equipment is used is increased, and the service life of the equipment can be effectively prolonged when the equipment is used.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Claims (6)
1. The utility model provides an industry is anti-shake device for three-dimensional imaging equipment, includes three-dimensional formation of image anti-shake main part (1), its characterized in that:
the limiting square plate (7) is arranged on one side inside the three-dimensional imaging anti-shake main body (1), the limiting square plate (7) is fixedly connected with the three-dimensional imaging anti-shake main body (1) through an electric push rod (10), an anti-collision cushion (8) is arranged on one side of the limiting square plate (7), and the anti-collision cushion (8) is connected with the limiting square plate (7) in a sticking mode;
distance measuring sensor (9), its setting is in the intermediate position department of anticollision cushion (8), and distance measuring sensor (9) and anticollision cushion (8) pass through draw-in groove fixed connection to distance measuring sensor (9) and electric putter (10) are through electric connection.
2. The anti-shake apparatus for industrial three-dimensional imaging device according to claim 1, wherein: the outside of electric putter (10) is provided with push rod fixed block (15), the inside both ends of three-dimensional imaging anti-shake main part (1) all are provided with outer spacing square (11), one side of three-dimensional imaging anti-shake main part (1) is provided with overhauls apron (2), and overhauls apron (2) and pass through draw-in groove fixed connection with three-dimensional imaging anti-shake main part (1).
3. The anti-shake apparatus for the industrial three-dimensional imaging device according to claim 1, wherein: the three-dimensional imaging anti-shake device is characterized in that an external fixing block (3) is arranged above one side of the three-dimensional imaging anti-shake main body (1), the external fixing block (3) is pasted with the three-dimensional imaging anti-shake main body (1) and connected with the three-dimensional imaging anti-shake main body (1), a round soft bump (4) is arranged at one end of the external fixing block (3), and more than two round soft bumps (4) are arranged.
4. The anti-shake apparatus for industrial three-dimensional imaging device according to claim 3, wherein: the two sides of the lower portion of the outer fixing square block (3) are provided with L-shaped limiting lower blocks (5), the L-shaped limiting lower blocks (5) are connected with the three-dimensional imaging anti-shaking main body (1) in a welded mode, and bolt fixing holes (6) are formed in the two ends of the lower portion of the L-shaped limiting lower blocks (5).
5. The anti-shake apparatus for industrial three-dimensional imaging device according to claim 1, wherein: the inner wall of three-dimensional imaging anti-shake main part (1) is provided with anti-impact inner block (14), and anti-impact inner block (14) and three-dimensional imaging anti-shake main part (1) are through draw-in groove fixed connection, the both ends of spacing square plate (7) all are provided with spin fixed block (18), one side of spin fixed block (18) is provided with slip spin (16), and slip spin (16) and spin fixed block (18) are through draw-in groove fixed connection.
6. The anti-shake apparatus for industrial three-dimensional imaging device according to claim 2, wherein: one side of outer spacing square (11) is provided with buffering square (13), and buffers square (13) and passes through buffer spring (12) fixed connection with outer spacing square (11), the other end of buffering square (13) is provided with fixed cushion (17).
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CN202222441246.5U CN218599218U (en) | 2022-09-15 | 2022-09-15 | Anti-shake device for industrial three-dimensional imaging equipment |
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CN202222441246.5U CN218599218U (en) | 2022-09-15 | 2022-09-15 | Anti-shake device for industrial three-dimensional imaging equipment |
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CN202222441246.5U Active CN218599218U (en) | 2022-09-15 | 2022-09-15 | Anti-shake device for industrial three-dimensional imaging equipment |
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